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Marinus M van Paassen

Showing results (1-10 of 13) with videos related to

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IEEE Transactions on Haptics|June 19, 2018
Haptic Guidance on Demand: A Grip-Force Based Scheduling of Guidance ForcesJan Smisek, Winfred Mugge, Jeroen B J Smeets, et al.
IEEE Transactions on Cybernetics|September 19, 2012
Modeling Human Control of Self-Motion Direction With Optic Flow and Vestibular MotionPeter M T Zaal, Frank M Nieuwenhuizen, Marinus M van Paassen, et al.
Human Factors|August 14, 2019
Touchscreens for Aircraft Navigation Tasks: Comparing Accuracy and Throughput of Three Flight Deck Interfaces Using Fitts' LawNout C M van Zon, Clark Borst, Daan M Pool, et al.
IEEE Transactions on Cybernetics|July 12, 2018
Effects of Target Signal Shape and System Dynamics on Feedforward in Manual ControlFrank M Drop, Daan M Pool, Marinus M van Paassen, et al.
IEEE Transactions on Cybernetics|June 13, 2013
Identification of the feedforward component in manual control with predictable target signalsFrank M Drop, Daan M Pool, Herman J Damveld, et al.
Ergonomics|January 11, 2018
What determines drivers' speed? A replication of three behavioural adaptation experiments in a single driving simulator studyTimo Melman, David A Abbink, Marinus M van Paassen, et al.
IEEE Transactions on Cybernetics|September 18, 2013
A biodynamic feedthrough model based on neuromuscular principlesJoost Venrooij, David A Abbink, Mark Mulder, et al.
IEEE Transactions on Cybernetics|August 20, 2014
A framework for biodynamic feedthrough analysis--part II: validation and applicationJoost Venrooij, Marinus M van Paassen, Mark Mulder, et al.
IEEE Transactions on Cybernetics|September 10, 2013
Mathematical biodynamic feedthrough model applied to rotorcraftJoost Venrooij, Mark Mulder, David A Abbink, et al.
IEEE Transactions on Cybernetics|January 24, 2017
Admittance-Adaptive Model-Based Approach to Mitigate Biodynamic FeedthroughJoost Venrooij, Max Mulder, Mark Mulder, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
IEEE Transactions on Haptics|June 19, 2018
Haptic Guidance on Demand: A Grip-Force Based Scheduling of Guidance ForcesJan Smisek, Winfred Mugge, Jeroen B J Smeets, et al.
IEEE Transactions on Cybernetics|September 19, 2012
Modeling Human Control of Self-Motion Direction With Optic Flow and Vestibular MotionPeter M T Zaal, Frank M Nieuwenhuizen, Marinus M van Paassen, et al.
Human Factors|August 14, 2019
Touchscreens for Aircraft Navigation Tasks: Comparing Accuracy and Throughput of Three Flight Deck Interfaces Using Fitts' LawNout C M van Zon, Clark Borst, Daan M Pool, et al.
IEEE Transactions on Cybernetics|July 12, 2018
Effects of Target Signal Shape and System Dynamics on Feedforward in Manual ControlFrank M Drop, Daan M Pool, Marinus M van Paassen, et al.
IEEE Transactions on Cybernetics|June 13, 2013
Identification of the feedforward component in manual control with predictable target signalsFrank M Drop, Daan M Pool, Herman J Damveld, et al.
Ergonomics|January 11, 2018
What determines drivers' speed? A replication of three behavioural adaptation experiments in a single driving simulator studyTimo Melman, David A Abbink, Marinus M van Paassen, et al.
IEEE Transactions on Cybernetics|September 18, 2013
A biodynamic feedthrough model based on neuromuscular principlesJoost Venrooij, David A Abbink, Mark Mulder, et al.
IEEE Transactions on Cybernetics|August 20, 2014
A framework for biodynamic feedthrough analysis--part II: validation and applicationJoost Venrooij, Marinus M van Paassen, Mark Mulder, et al.
IEEE Transactions on Cybernetics|September 10, 2013
Mathematical biodynamic feedthrough model applied to rotorcraftJoost Venrooij, Mark Mulder, David A Abbink, et al.
IEEE Transactions on Cybernetics|January 24, 2017
Admittance-Adaptive Model-Based Approach to Mitigate Biodynamic FeedthroughJoost Venrooij, Max Mulder, Mark Mulder, et al.
Pageof 2